Technical Guide

China supplier Drive Chain Transmission Steel Forging Standard Chain and Industrial Carbon Steel Forged Link

July 21, 2023

Product Description

About Factory 

With more than 18 years’ histiory, we are a professinal manufacturer for drop forged products such as forged chain (X348 X458 X658 X678 X698 F100 F160), scraper chain (10160, 14218, 14226, 142N), conveyor trolley (X348, X458, X678, XT160), and drive chain (X348, X458, X678), and so forth standard moulds of chain. 

Besides, we can also produce as per your drawing or sample, special link chain, pusher, pin and plate, according to customers’ unique requirements.

Product Description

1) Material: Alloy steel, 40Cr, 42CrMo and so on.
2) Types: Standard types, X348 X458 X678, and so on. (Or as per your drawing)
3) Process: Moulding→Forging→Polishing & Blasting→Fine machining→Heat treatment→Blasting→Inspecting & testing→Packing

Product Show
 

Technical Data
 

Model Dimension Weight (Kg) Material Hardness Working Load (KN) Limit Load (KN)
P T C S F R D
10160B 101.6 24 36 13 14 6 14 0.32 20CrMnTi Surface HRC56-64°    
Depth 0.6-1.2mm
18 100
10160 101.6 30 36 13 14.5 9 14 0.36 20CrMnTi Surface HRC56-64°     Depth 0.6-1.2mm 21.6 120
14218 142 42 50 19 20.5 11 25 1.15 20CrMnTi Surface HRC56-64°     Depth 0.6-1.2mm 48.6 270
14226 142 62 50 28 30 15 25 1.75 20CrMnTi Surface HRC56-64°     Depth 0.6-1.2mm 61.2 340
2571 200 66 60 30 32 18 30 2.8 20CrMnTi Surface HRC56-64°     Depth 0.6-1.2mm 72 400
26014 260 70 75 31 33 20 34 5.2 20CrMnTi Surface HRC56-64°     Depth 0.6-1.2mm 135 750
142N 142 43 50 19 22 12.5 25 1.2 40Cr Quench HRC36-44° 75.6 420
150D 142 42 50 19 20.5 11 25 1.15 40Cr Quench HRC36-44° 75.6 420
MG20 200 70 50 27 29 17 35 3.78 40Cr Quench HRC36-44° 144 800
MG20B 200 70 50 27 29 17 30 3.82 40Cr Quench HRC36-44° 140.4 780
MG20C 200 70 50 27 29 17 28 3.85 40Cr Quench HRC36-44° 122.4 680
MS32 200 42 50 20 22 12 25 1.4 40Cr Quench HRC36-44° 75.6 420
MS55 200 80 70 35 38 25 28 4.36 40Cr Quench HRC36-44° 138.6 770
3006 200 65 70 30 33 24 32 3.6 40Cr Quench HRC36-44° 160.2 890
MS63 250 70 80 30 33 20 32 4.93 40Cr Quench HRC36-44° 147.6 820
S16 100 30 27 15 16 8 14 0.3 40Cr Quench HRC36-44° 16 88
S20 125 34 33 17 18 8 17 0.37 40Cr Quench HRC36-44° 19.4 108
S25 160 48 39 23 25 13 20 1.28 40Cr Quench HRC36-44° 55.8 310
S30 142 46 49 22 23.5 14 25 1.3 40Cr Quench HRC36-44° 91.8 510
Z16 100 40 35 18 20 12 17 0.4 40Cr Quench HRC36-44° 32.4 180
Z20 125 50 46 24 26 15 20 0.67 40Cr Quench HRC36-44° 59.4 330
Z20D 125 52 60 24 26 16 26 1.15 40Cr Quench HRC36-44° 82.8 460
Z25 160 58 55 28 30 18 25 2.25 40Cr Quench HRC36-44° 82.8 460
Z25D 160 66 64 29 31 22 28 2.6 40Cr Quench HRC36-44° 120.6 670
Z30 142 64 50 29 30.5 18 25 1.8 40Cr Quench HRC36-44° 111.6 620

Products & Testing Equipments
 

Products Application


Packing & Delivery
 

Why Choose Us?

1. We are engaged in chain industry over 15 years with rich market experience. We keep improving production techniques. All the products have longer working life and have passed the market test.

2. We can design the correct chains with high quality material, good abrasion resistance, good corrosion, high strengthen and etc as per your request or the chain application.

3. We are the chain manufacturer; you can directly purchase the product from us with low price and high quality.

4. We have a professional team for international trade, they have abundant experiences and are always ready to solve problems for customers. So you have nothing to worry about.

5. We have the long-term cooperative forwarder who can give us the lowest freight. And it can help you to save the freight. What’s more, for the FCL, we will design the packages as per the container sizes with the largest capacity to save the shipping cost for both of us.

 

Standard or Nonstandard: Standard
Application: Textile Machinery, Garment Machinery, Conveyer Equipment, Packaging Machinery, Electric Cars, Motorcycle, Food Machinery, Mining Equipment, Agricultural Machinery, Coating, Spraying, Mining, Slaughtering, Assembly
Surface Treatment: Polishing
Structure: Combined Chain
Material: Alloy
Type: Cranked Link Chain
Samples:
US$ 5/Piece
1 Piece(Min.Order)

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Request Sample

Customization:
Available

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Customized Request

drive chain

How does the design of a drive chain affect its efficiency and performance?

The design of a drive chain plays a crucial role in determining its efficiency and performance characteristics. Here is a detailed explanation:

The efficiency and performance of a drive chain are influenced by several design factors that are carefully considered during its development:

  • Chain Pitch and Size: The pitch and size of the chain links affect the load-carrying capacity, efficiency, and overall performance of the drive chain. A proper balance must be struck between chain size and strength to ensure optimal power transmission while minimizing friction and energy losses.
  • Roller Design: The shape and dimensions of the chain’s rollers impact its efficiency and performance. Well-designed rollers reduce friction and wear by promoting smooth rolling motion between the chain and the sprocket teeth. They also contribute to improved power transmission and reduced noise levels.
  • Plate and Pin Design: The shape and material of the chain’s plates and pins influence its strength, durability, and flexibility. Properly designed plates and pins ensure reliable power transmission, resistance to wear, and the ability to accommodate shock loads and varying torque conditions.
  • Sprocket Profile and Tooth Design: The design of the chain’s sprockets is critical for efficient power transmission. Sprockets with accurately machined teeth and suitable profiles minimize friction, ensure proper engagement with the chain, and facilitate smooth chain articulation. Well-designed sprockets reduce wear, noise, and energy losses.
  • Lubrication Features: Drive chain design often incorporates lubrication features such as oiling holes or grooves to facilitate proper lubricant distribution along the chain’s moving parts. Well-designed lubrication features ensure effective lubrication, reduce friction, prevent wear, and enhance the chain’s overall efficiency and lifespan.
  • Material Selection: The choice of materials for the chain’s components, such as the rollers, plates, pins, and bushings, significantly impacts its efficiency and performance. The selected materials must possess appropriate strength, wear resistance, and fatigue resistance to withstand the operating conditions and demands of the application.
  • Tensioning and Adjustment Mechanisms: Drive chain design often includes mechanisms for tensioning and adjusting the chain’s tension. Properly designed tensioning systems ensure optimal chain tension throughout its operation, promoting efficient power transmission, reducing chain vibration, and extending the chain’s service life.

A well-designed drive chain minimizes energy losses due to friction, reduces wear, and optimizes power transmission efficiency. It provides smooth and reliable operation, reduces noise levels, and contributes to the overall performance and longevity of the power transmission system.

It is important to note that drive chain design should consider the specific requirements and constraints of the application, including load capacity, speed, environmental conditions, and maintenance considerations. Regular inspection, lubrication, and proper tensioning are essential for maintaining the efficiency and performance of the drive chain over time.

By incorporating efficient design principles and considering the various factors that influence performance, manufacturers can produce drive chains that offer high efficiency, reliable power transmission, extended service life, and optimal performance in their intended applications.

drive chain

How does the backlash or play in a drive chain affect its performance?

The presence of backlash or play in a drive chain can have a significant impact on its performance and overall operation. Here is a detailed explanation:

Backlash or play refers to the small amount of free movement or clearance between the engaged components of a drive chain, typically between the chain and the sprockets. This clearance can lead to several performance-related issues:

  • Reduced Accuracy: Backlash can cause a loss of accuracy and precision in the positioning and movement of the driven components. The presence of free play can result in inconsistent positioning, leading to inaccuracies in machine operations or product quality.
  • Loss of Power and Efficiency: Backlash causes a loss of power transmission efficiency. As the chain engages with the sprockets, any free movement or clearance reduces the effective transfer of power, resulting in decreased efficiency and potential energy loss.
  • Vibration and Noise: Backlash can lead to vibration and noise during operation. The free movement of the chain can cause rattling, knocking, or banging sounds, as well as vibration, which can affect the overall system performance and operator comfort.
  • Potential for Chain Skipping or Jumping: Excessive backlash can cause the chain to skip or jump on the sprockets, leading to interrupted or irregular power transmission. This can result in sudden jerks, misalignment, or even chain derailment, affecting the overall system performance and potentially causing damage to the chain or other components.
  • Decreased System Response: Backlash affects the responsiveness of the system. When there is excessive play, the system may not respond quickly or accurately to changes in input or commands. This can be problematic in applications requiring precise and immediate movement or control.

To mitigate the negative effects of backlash, it is important to minimize or control the clearance within the drive chain system. This can be achieved through proper chain tensioning, sprocket alignment, and the use of anti-backlash devices or mechanisms.

Regular inspection and maintenance are crucial to identify and address any excessive backlash in the drive chain. Maintaining proper tension, lubrication, and periodically checking and adjusting the sprocket alignment can help minimize the backlash and ensure optimal chain performance.

It is essential to consult with the manufacturer’s guidelines and recommendations for the specific drive chain system to determine the acceptable levels of backlash and the appropriate measures to reduce its impact on performance.

By minimizing backlash or play in a drive chain, operators can ensure accurate power transmission, improved efficiency, reduced noise, and vibration, ultimately leading to better overall system performance and productivity.

drive chain

What are the safety considerations when working with a drive chain?

Working with a drive chain requires proper safety precautions to ensure the well-being of individuals and the safe operation of machinery. Here are some important safety considerations:

  • 1. Protective Equipment: Wear appropriate personal protective equipment (PPE) such as gloves, safety glasses, and protective clothing when working with a drive chain. This helps protect against potential hazards like pinch points, flying debris, or contact with lubricants.
  • 2. Lockout/Tagout: Prior to performing any maintenance or repair tasks involving the drive chain, follow lockout/tagout procedures to de-energize and isolate the machinery. This ensures that unexpected energization or movement of the chain does not occur, preventing accidents or injuries.
  • 3. Machine Guarding: Ensure that drive chains are adequately guarded with appropriate covers or enclosures to prevent accidental contact with moving parts. Proper machine guarding helps minimize the risk of entanglement or injury caused by the drive chain.
  • 4. Maintain Proper Tension: Maintain the proper tension of the drive chain to prevent excessive slack or tightness, which can lead to chain derailment, sudden movement, or component failure. Follow the manufacturer’s guidelines for tension adjustment and ensure it is performed safely.
  • 5. Proper Training and Procedures: Ensure that individuals working with drive chains are properly trained on their safe operation, maintenance, and any specific hazards associated with the machinery or equipment. Establish and follow standard operating procedures (SOPs) for tasks involving the drive chain.
  • 6. Regular Inspections: Regularly inspect the drive chain for signs of wear, damage, or misalignment. Promptly address any issues identified during inspections to prevent potential accidents or equipment failure.
  • 7. Maintenance and Lubrication: Follow proper maintenance procedures and lubrication guidelines to ensure the drive chain operates smoothly and efficiently. Use appropriate lubricants and handle them safely to minimize the risk of slips, falls, or contact with hazardous substances.
  • 8. Safe Lifting and Handling: When handling or lifting heavy drive chain components, use proper lifting techniques and equipment to prevent strain or injuries. Avoid placing yourself or others in positions that could be caught or crushed by the chain or associated machinery.

By adhering to these safety considerations and incorporating them into workplace practices, the risks associated with working with a drive chain can be minimized, promoting a safe and secure working environment.

China supplier Drive Chain Transmission Steel Forging Standard Chain and Industrial Carbon Steel Forged Link  China supplier Drive Chain Transmission Steel Forging Standard Chain and Industrial Carbon Steel Forged Link
editor by CX 2023-07-21